Patent
US 10,923,283base resin
epoxy resin
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
durability against external stimuli such as bending of a multilayer ceramic electronic component may improve, but resistivity may become high compared to an electrode which does not include a base resin, and accordingly, equivalent series resistance of a multi
| 0.5–7.5 pa |
| — |
Pressure | 2.5–2.9 pa | — |
Pressure | 5–30 pa | — |
Pressure | 0.5–5 pa | — |
Pressure | ≤ 5 pa | — |
Pressure | ≤ 0.5 pa | — |
ACOUSTIC DIAPHRAGM INCLUDING GRAPHENE AND ACOUSTIC DEVICE EMPLOYING THE SAME
base resin
epoxy resin
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
durability against external stimuli such as bending of a multilayer ceramic electronic component may improve, but resistivity may become high compared to an electrode which does not include a base resin, and accordingly, equivalent series resistance of a multi
| 0.5–7.5 pa |
| — |
Pressure | 2.5–2.9 pa | — |
Pressure | 5–30 pa | — |
Pressure | 0.5–5 pa | — |
Pressure | ≤ 5 pa | — |
Pressure | ≤ 0.5 pa | — |
ACOUSTIC DIAPHRAGM INCLUDING GRAPHENE AND ACOUSTIC DEVICE EMPLOYING THE SAME
base resin
epoxy resin
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
durability against external stimuli such as bending of a multilayer ceramic electronic component may improve, but resistivity may become high compared to an electrode which does not include a base resin, and accordingly, equivalent series resistance of a multi
| 0.5–7.5 pa |
| — |
Pressure | 2.5–2.9 pa | — |
Pressure | 5–30 pa | — |
Pressure | 0.5–5 pa | — |
Pressure | ≤ 5 pa | — |
Pressure | ≤ 0.5 pa | — |
ACOUSTIC DIAPHRAGM INCLUDING GRAPHENE AND ACOUSTIC DEVICE EMPLOYING THE SAME
base resin
epoxy resin
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
FIG. 6 is a graph illustrating a result of Raman analysis of a conductive resin layer including a graphene platelet according to an exemplary embodiment.
durability against external stimuli such as bending of a multilayer ceramic electronic component may improve, but resistivity may become high compared to an electrode which does not include a base resin, and accordingly, equivalent series resistance of a multi
| 0.5–7.5 pa |
| — |
Pressure | 2.5–2.9 pa | — |
Pressure | 5–30 pa | — |
Pressure | 0.5–5 pa | — |
Pressure | ≤ 5 pa | — |
Pressure | ≤ 0.5 pa | — |
ACOUSTIC DIAPHRAGM INCLUDING GRAPHENE AND ACOUSTIC DEVICE EMPLOYING THE SAME